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首页> 外文期刊>Frontiers of materials science >Influence of acid and alkaline sources on optical, structural and photovoltaic properties of CdSe nanoparticles precipitated from aqueous solution
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Influence of acid and alkaline sources on optical, structural and photovoltaic properties of CdSe nanoparticles precipitated from aqueous solution

机译:酸和碱源对水溶液中沉淀的CdSe纳米粒子光学,结构和光伏性能的影响

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CdSe is a widely researched material for photovoltaic applications. One of the most important parameters of the synthesis is the pH value, since it determines the kinetics and the mechanism of the reaction and in consequence, the optical and morphological properties of the products. We present the synthesis of CdSe in solution with strict control of pH and the comparison of ammonia and KOH as alkaline sources and diluted HCl as acid medium. CdSe formation was monitored with photoluminescence emission spectra (main peak in 490 nm, bandgap of CdSe nanoparticles). XRD patterns indicated that CdSe nanoparticles are mainly of cubic structure for ammonia and HCl, but the hexagonal planes appear with KOH. Product yield decreases with pH and also decreases with KOH at constant pH value since ammonia has a double function, as complexing agent and alkaline source. Changes in morphology were observed in SEM images as well with the different alkaline source. The effect of alkaline sources on photovoltaic performance of hybrid organic solar cells with CdSe and poly(3-hexylthiophene) as active layers was clearly observed, indicating the importance of synthesis conditions on optoelectronic properties of promising semiconductor nanomaterials for solar cell applications.
机译:CdSe是用于光伏应用的广泛研究的材料。合成过程中最重要的参数之一是pH值,因为它决定了反应的动力学和机理,进而决定了产物的光学和形态特性。我们介绍了严格控制pH值的溶液中CdSe的合成,并比较了以氨和KOH为碱源和以稀HCl为酸介质的方法。用光致发光发射光谱(490nm的主峰,CdSe纳米颗粒的带隙)监测CdSe的形成。 XRD图谱表明,CdSe纳米颗粒主要为氨和HCl的立方结构,但六面体与KOH一起出现。在恒定的pH值下,产物收率随pH值降低,并且随着KOH的降低,因为氨具有双重功能(作为络合剂和碱性源),因此产率也会降低。在SEM图像中观察到形态变化,以及使用不同的碱源。清楚地观察到碱性源对具有CdSe和聚(3-己基噻吩)作为活性层的混合有机太阳能电池光伏性能的影响,表明合成条件对太阳能电池应用中有希望的半导体纳米材料的光电性能的重要性。

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